A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the context of laser-biomaterials interaction. The proposed approach is based on the use of femtosecond pulsed lasers (fs) and Fe³⁺-doped calcium phosphate minerals (specifically in this work fluorapatite powder containing Fe₂O₃ nanoparticles (NP)). A layer of the synthetic powder is applied to the surface of eroded bovine enamel and is irradiated with a fs laser (1040 nm wavelength, 1 GHz repetition rate, 150 fs pulse duration and 0.4 W average power). The Fe₂O₃ NPs absorb the light and may act as thermal antennae, dissipating energy to the vicinal mineral phase. Such a photothermal process triggers the sintering and densification of the surroundi...
Introduction: Dental decay is caused by the fermentation of carbohydrates and the production of acid...
The emergence of mode-locked near-IR (NIR) lasers has opened novel and exciting opportunities in den...
Need: Dental enamel is an acellular and avascular mineralised tissue, containing more than 95% calci...
The authors acknowledge support from the sponsors of this work; Marie Curie IF (PRe-FActo), IKC PoF ...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
Here we present a platform technology for the direct sintering of calcium phosphates on dental hard ...
The authors acknowledge support from the sponsors of this work; the EPSRC LUMIN (EP/K020234/1) and E...
Acid-induced enamel erosion leading to dentine hypersensitivity is a growing problem for both the yo...
The authors acknowledge support from the sponsors of this work; the EPSRC LUMIN (EP/K020234/1) and E...
Calcium phosphate based biominerals are the main inorganic constituent of bone and teeth. Therefore,...
Direct laser sintering on hard tissues is likely to open new pathways for personalised medicine. To ...
Tooth hypersensitivity is a growing problem affecting both the young and ageing population worldwide...
We investigated the laser sintering behaviour of rare-earth oxide doped calcium phosphate suspension...
Need: Dental enamel is an acellular and avascular mineralised tissue, containing more than 95% calci...
Introduction: Dental decay is caused by the fermentation of carbohydrates and the production of acid...
The emergence of mode-locked near-IR (NIR) lasers has opened novel and exciting opportunities in den...
Need: Dental enamel is an acellular and avascular mineralised tissue, containing more than 95% calci...
The authors acknowledge support from the sponsors of this work; Marie Curie IF (PRe-FActo), IKC PoF ...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
A radical new methodology for the exogenous mineralization of hard tissues is demonstrated in the co...
Here we present a platform technology for the direct sintering of calcium phosphates on dental hard ...
The authors acknowledge support from the sponsors of this work; the EPSRC LUMIN (EP/K020234/1) and E...
Acid-induced enamel erosion leading to dentine hypersensitivity is a growing problem for both the yo...
The authors acknowledge support from the sponsors of this work; the EPSRC LUMIN (EP/K020234/1) and E...
Calcium phosphate based biominerals are the main inorganic constituent of bone and teeth. Therefore,...
Direct laser sintering on hard tissues is likely to open new pathways for personalised medicine. To ...
Tooth hypersensitivity is a growing problem affecting both the young and ageing population worldwide...
We investigated the laser sintering behaviour of rare-earth oxide doped calcium phosphate suspension...
Need: Dental enamel is an acellular and avascular mineralised tissue, containing more than 95% calci...
Introduction: Dental decay is caused by the fermentation of carbohydrates and the production of acid...
The emergence of mode-locked near-IR (NIR) lasers has opened novel and exciting opportunities in den...
Need: Dental enamel is an acellular and avascular mineralised tissue, containing more than 95% calci...